STRUCTURE, FUNCTION AND REGULATION OF BOMBESIN RECEPTORS
STRUCTURE, FUNCTION AND REGULATION OF BOMBESIN RECEPTORS
批准号:
6289636
负责人:
James F. Battey
金额:
$0.0万
依托单位国家:
美国
项目类别:
财政年份:
--
资助国家:
美国
项目状态:
未结题
起止时间:
至
关键词:
G protein autism bombesin gastrin releasing peptide gene targeting genetic regulation guanine nucleotide binding protein human genetic material tag human tissue laboratory mouse neuropeptide receptor phenotype phospholipase C phosphorylation protein structure function receptor coupling site directed mutagenesis
中文摘要
哺乳动物蛙皮素样神经肽,胃泌素释放肽(GRP)和神经介肽B(NMB),介导正常组织中的多种生物学反应,并刺激一些肺癌、胰腺癌和前列腺癌的生长。我们的实验室克隆并鉴定了三种结构上不同的人铃蟾肽受体:胃泌素释放肽受体(GRP-R,或bb2);神经介肽B受体(NMB-R,或bb1);铃蟾肽受体亚型3(BRS-3,或bb3)。所有三种受体都是G蛋白偶联受体超家族的成员,与激活磷脂酶C的异源三聚体G蛋白偶联。在过去的一年里,我们对这些受体的功能和调节的理解取得了一些进展:(1)我们使用基因靶向策略来创造缺乏GRP-R或BRS-3的小鼠。缺乏GRP-R的小鼠不表现出蛙皮素诱导的饱腹感,暗示GRP-R是食欲的调节剂。随着缺乏GRP-R的小鼠年龄的增长,GRP-R靶向小鼠更有可能变得肥胖。相比之下,缺乏BRS-3的小鼠在生命的最初几个月内变得肥胖。(2)我们已经开发了一种协议,使我们能够产生嵌入正常生物膜的非偶联受体。这种制备方法使我们能够重建与纯化G蛋白的偶联,研究异源三聚体GTP结合蛋白上受体催化的核苷酸交换的选择性和酶学。使用该测定,我们表明GRP-R的C-末端结构域中丝氨酸和苏氨酸的磷酸化抑制与异源三聚体G-蛋白的偶联,从而确定配体刺激的受体磷酸化是关闭受体信号传导的开关。(3)我们已经使用酵母双杂交系统来搜索与C-末端结构域相互作用的分子,并且已经确定了几个候选者用于进一步研究,包括最近已被证明与视紫红质的相应C-末端结构域相互作用的一个。(4)使用定点诱变,我们已经表明,有残基在第六跨膜结构域是关键的选择性激动剂和拮抗剂的结合,和其他残基在这个相同的域,调节GRP-R的构象变化。总之,这些研究暗示第六跨膜结构域作为GRP-R功能的整合者和协调者。- 蛙皮素,G蛋白偶联受体,受体偶联,定点突变,基因打靶
英文摘要
Mammalian bombesin-like neuropeptides, gastrin releasing peptide (GRP) and neuromedin B (NMB), mediate a diverse range of biological responses in normal tissues, and stimulate the growth of some lung, pancreatic, and prostate carcinomas. Our laboratory cloned and characterized three structurally and pharmacologically distinct human bombesin receptors: the gastrin-releasing peptide receptor (GRP-R, or bb2); the neuromedin B receptor (NMB-R, or bb1); and bombesin receptor subtype 3 (BRS-3, or bb3). All three receptors are members of the G-protein coupled receptor superfamily, coupling to heterotrimeric G-proteins that activate phospholipase C. Several advances in our understanding of the function and regulation of these receptors has occurred within the last year: (1) we have used gene targeting strategies to create mice which lack either GRP-R or BRS-3. Mice lacking GRP-R do not exhibit bombesin-induced satiety, implicating the GRP-R as a regulator of appetite. As mice lacking GRP-R age, GRP-R targeted mice are more likely to become obese. In contrast, mice lacking BRS-3 become obese within the first few months of life. (2) We have developed a protocol that allows us to generate uncoupled receptors embedded in a normal biological membrane. This preparation allows us to reconstitute coupling to purifiedG-proteins, examining the selectivity and enzymology of receptor-catalyzed nucleotide exchange on heterotrimeric GTP-binding proteins. Using this assay, we show that phosphorylation of serines and threonines in the C- terminal domain of the GRP-R inhibits coupling to heterotrimeric G-proteins thereby establishing that ligand- stimulated receptor phosphorylation is the switch that turns off receptor signalling. (3) We have used the yeast two-hybrid system to search for molecules that interact with the C- terminal domain, and have identified several candidates for further study, including one that has been recently shown to interact with the corresponding C-terminal domain of rhodopsin. (4) Using site-directed mutagenesis, we have shown that there are residues in the sixth transmembrane domain that are critical for selective agonist and antagonist binding, and other residues in this same domain that regulate conformational change of the GRP-R. Taken together, these studies implicate the sixth transmembrane domain as an integrator and coordinator of GRP-R function. - bombesin, G- protein coupled receptors, receptor coupling, site-directed mutagenesis, gene targeting
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